Cargando…

Dissection of complicate genetic architecture and breeding perspective of cottonseed traits by genome-wide association study

BACKGROUND: Cottonseed is one of the most important raw materials for plant protein, oil and alternative biofuel for diesel engines. Understanding the complex genetic basis of cottonseed traits is requisite for achieving efficient genetic improvement of the traits. However, it is not yet clear about...

Descripción completa

Detalles Bibliográficos
Autores principales: Du, Xiongming, Liu, Shouye, Sun, Junling, Zhang, Gengyun, Jia, Yinhua, Pan, Zhaoe, Xiang, Haitao, He, Shoupu, Xia, Qiuju, Xiao, Songhua, Shi, Weijun, Quan, Zhiwu, Liu, Jianguang, Ma, Jun, Pang, Baoyin, Wang, Liru, Sun, Gaofei, Gong, Wenfang, Jenkins, Johnie N., Lou, Xiangyang, Zhu, Jun, Xu, Haiming
Formato: Online Artículo Texto
Lenguaje:English
Publicado: BioMed Central 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5998501/
https://www.ncbi.nlm.nih.gov/pubmed/29895260
http://dx.doi.org/10.1186/s12864-018-4837-0
_version_ 1783331245840662528
author Du, Xiongming
Liu, Shouye
Sun, Junling
Zhang, Gengyun
Jia, Yinhua
Pan, Zhaoe
Xiang, Haitao
He, Shoupu
Xia, Qiuju
Xiao, Songhua
Shi, Weijun
Quan, Zhiwu
Liu, Jianguang
Ma, Jun
Pang, Baoyin
Wang, Liru
Sun, Gaofei
Gong, Wenfang
Jenkins, Johnie N.
Lou, Xiangyang
Zhu, Jun
Xu, Haiming
author_facet Du, Xiongming
Liu, Shouye
Sun, Junling
Zhang, Gengyun
Jia, Yinhua
Pan, Zhaoe
Xiang, Haitao
He, Shoupu
Xia, Qiuju
Xiao, Songhua
Shi, Weijun
Quan, Zhiwu
Liu, Jianguang
Ma, Jun
Pang, Baoyin
Wang, Liru
Sun, Gaofei
Gong, Wenfang
Jenkins, Johnie N.
Lou, Xiangyang
Zhu, Jun
Xu, Haiming
author_sort Du, Xiongming
collection PubMed
description BACKGROUND: Cottonseed is one of the most important raw materials for plant protein, oil and alternative biofuel for diesel engines. Understanding the complex genetic basis of cottonseed traits is requisite for achieving efficient genetic improvement of the traits. However, it is not yet clear about their genetic architecture in genomic level. GWAS has been an effective way to explore genetic basis of quantitative traits in human and many crops. This study aims to dissect genetic mechanism seven cottonseed traits by a GWAS for genetic improvement. RESULTS: A genome-wide association study (GWAS) based on a full gene model with gene effects as fixed and gene-environment interaction as random, was conducted for protein, oil and 5 fatty acids using 316 accessions and ~ 390 K SNPs. Totally, 124 significant quantitative trait SNPs (QTSs), consisting of 16, 21, 87 for protein, oil and fatty acids (palmitic, linoleic, oleic, myristic, stearic), respectively, were identified and the broad-sense heritability was estimated from 71.62 to 93.43%; no QTS-environment interaction was detected for the protein, the palmitic and the oleic contents; the protein content was predominantly controlled by epistatic effects accounting for 65.18% of the total variation, but the oil content and the fatty acids except the palmitic were mainly determined by gene main effects and no epistasis was detected for the myristic and the stearic. Prediction of superior pure line and hybrid revealed the potential of the QTSs in the improvement of cottonseed traits, and the hybrid could achieve higher or lower genetic values compared with pure lines. CONCLUSIONS: This study revealed complex genetic architecture of seven cottonseed traits at whole genome-wide by mixed linear model approach; the identified genetic variants and estimated genetic component effects of gene, gene-gene and gene-environment interaction provide cotton geneticist or breeders new knowledge on the genetic mechanism of the traits and the potential molecular breeding design strategy. ELECTRONIC SUPPLEMENTARY MATERIAL: The online version of this article (10.1186/s12864-018-4837-0) contains supplementary material, which is available to authorized users.
format Online
Article
Text
id pubmed-5998501
institution National Center for Biotechnology Information
language English
publishDate 2018
publisher BioMed Central
record_format MEDLINE/PubMed
spelling pubmed-59985012018-06-25 Dissection of complicate genetic architecture and breeding perspective of cottonseed traits by genome-wide association study Du, Xiongming Liu, Shouye Sun, Junling Zhang, Gengyun Jia, Yinhua Pan, Zhaoe Xiang, Haitao He, Shoupu Xia, Qiuju Xiao, Songhua Shi, Weijun Quan, Zhiwu Liu, Jianguang Ma, Jun Pang, Baoyin Wang, Liru Sun, Gaofei Gong, Wenfang Jenkins, Johnie N. Lou, Xiangyang Zhu, Jun Xu, Haiming BMC Genomics Research Article BACKGROUND: Cottonseed is one of the most important raw materials for plant protein, oil and alternative biofuel for diesel engines. Understanding the complex genetic basis of cottonseed traits is requisite for achieving efficient genetic improvement of the traits. However, it is not yet clear about their genetic architecture in genomic level. GWAS has been an effective way to explore genetic basis of quantitative traits in human and many crops. This study aims to dissect genetic mechanism seven cottonseed traits by a GWAS for genetic improvement. RESULTS: A genome-wide association study (GWAS) based on a full gene model with gene effects as fixed and gene-environment interaction as random, was conducted for protein, oil and 5 fatty acids using 316 accessions and ~ 390 K SNPs. Totally, 124 significant quantitative trait SNPs (QTSs), consisting of 16, 21, 87 for protein, oil and fatty acids (palmitic, linoleic, oleic, myristic, stearic), respectively, were identified and the broad-sense heritability was estimated from 71.62 to 93.43%; no QTS-environment interaction was detected for the protein, the palmitic and the oleic contents; the protein content was predominantly controlled by epistatic effects accounting for 65.18% of the total variation, but the oil content and the fatty acids except the palmitic were mainly determined by gene main effects and no epistasis was detected for the myristic and the stearic. Prediction of superior pure line and hybrid revealed the potential of the QTSs in the improvement of cottonseed traits, and the hybrid could achieve higher or lower genetic values compared with pure lines. CONCLUSIONS: This study revealed complex genetic architecture of seven cottonseed traits at whole genome-wide by mixed linear model approach; the identified genetic variants and estimated genetic component effects of gene, gene-gene and gene-environment interaction provide cotton geneticist or breeders new knowledge on the genetic mechanism of the traits and the potential molecular breeding design strategy. ELECTRONIC SUPPLEMENTARY MATERIAL: The online version of this article (10.1186/s12864-018-4837-0) contains supplementary material, which is available to authorized users. BioMed Central 2018-06-13 /pmc/articles/PMC5998501/ /pubmed/29895260 http://dx.doi.org/10.1186/s12864-018-4837-0 Text en © The Author(s). 2018 Open AccessThis article is distributed under the terms of the Creative Commons Attribution 4.0 International License (http://creativecommons.org/licenses/by/4.0/), which permits unrestricted use, distribution, and reproduction in any medium, provided you give appropriate credit to the original author(s) and the source, provide a link to the Creative Commons license, and indicate if changes were made. The Creative Commons Public Domain Dedication waiver (http://creativecommons.org/publicdomain/zero/1.0/) applies to the data made available in this article, unless otherwise stated.
spellingShingle Research Article
Du, Xiongming
Liu, Shouye
Sun, Junling
Zhang, Gengyun
Jia, Yinhua
Pan, Zhaoe
Xiang, Haitao
He, Shoupu
Xia, Qiuju
Xiao, Songhua
Shi, Weijun
Quan, Zhiwu
Liu, Jianguang
Ma, Jun
Pang, Baoyin
Wang, Liru
Sun, Gaofei
Gong, Wenfang
Jenkins, Johnie N.
Lou, Xiangyang
Zhu, Jun
Xu, Haiming
Dissection of complicate genetic architecture and breeding perspective of cottonseed traits by genome-wide association study
title Dissection of complicate genetic architecture and breeding perspective of cottonseed traits by genome-wide association study
title_full Dissection of complicate genetic architecture and breeding perspective of cottonseed traits by genome-wide association study
title_fullStr Dissection of complicate genetic architecture and breeding perspective of cottonseed traits by genome-wide association study
title_full_unstemmed Dissection of complicate genetic architecture and breeding perspective of cottonseed traits by genome-wide association study
title_short Dissection of complicate genetic architecture and breeding perspective of cottonseed traits by genome-wide association study
title_sort dissection of complicate genetic architecture and breeding perspective of cottonseed traits by genome-wide association study
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5998501/
https://www.ncbi.nlm.nih.gov/pubmed/29895260
http://dx.doi.org/10.1186/s12864-018-4837-0
work_keys_str_mv AT duxiongming dissectionofcomplicategeneticarchitectureandbreedingperspectiveofcottonseedtraitsbygenomewideassociationstudy
AT liushouye dissectionofcomplicategeneticarchitectureandbreedingperspectiveofcottonseedtraitsbygenomewideassociationstudy
AT sunjunling dissectionofcomplicategeneticarchitectureandbreedingperspectiveofcottonseedtraitsbygenomewideassociationstudy
AT zhanggengyun dissectionofcomplicategeneticarchitectureandbreedingperspectiveofcottonseedtraitsbygenomewideassociationstudy
AT jiayinhua dissectionofcomplicategeneticarchitectureandbreedingperspectiveofcottonseedtraitsbygenomewideassociationstudy
AT panzhaoe dissectionofcomplicategeneticarchitectureandbreedingperspectiveofcottonseedtraitsbygenomewideassociationstudy
AT xianghaitao dissectionofcomplicategeneticarchitectureandbreedingperspectiveofcottonseedtraitsbygenomewideassociationstudy
AT heshoupu dissectionofcomplicategeneticarchitectureandbreedingperspectiveofcottonseedtraitsbygenomewideassociationstudy
AT xiaqiuju dissectionofcomplicategeneticarchitectureandbreedingperspectiveofcottonseedtraitsbygenomewideassociationstudy
AT xiaosonghua dissectionofcomplicategeneticarchitectureandbreedingperspectiveofcottonseedtraitsbygenomewideassociationstudy
AT shiweijun dissectionofcomplicategeneticarchitectureandbreedingperspectiveofcottonseedtraitsbygenomewideassociationstudy
AT quanzhiwu dissectionofcomplicategeneticarchitectureandbreedingperspectiveofcottonseedtraitsbygenomewideassociationstudy
AT liujianguang dissectionofcomplicategeneticarchitectureandbreedingperspectiveofcottonseedtraitsbygenomewideassociationstudy
AT majun dissectionofcomplicategeneticarchitectureandbreedingperspectiveofcottonseedtraitsbygenomewideassociationstudy
AT pangbaoyin dissectionofcomplicategeneticarchitectureandbreedingperspectiveofcottonseedtraitsbygenomewideassociationstudy
AT wangliru dissectionofcomplicategeneticarchitectureandbreedingperspectiveofcottonseedtraitsbygenomewideassociationstudy
AT sungaofei dissectionofcomplicategeneticarchitectureandbreedingperspectiveofcottonseedtraitsbygenomewideassociationstudy
AT gongwenfang dissectionofcomplicategeneticarchitectureandbreedingperspectiveofcottonseedtraitsbygenomewideassociationstudy
AT jenkinsjohnien dissectionofcomplicategeneticarchitectureandbreedingperspectiveofcottonseedtraitsbygenomewideassociationstudy
AT louxiangyang dissectionofcomplicategeneticarchitectureandbreedingperspectiveofcottonseedtraitsbygenomewideassociationstudy
AT zhujun dissectionofcomplicategeneticarchitectureandbreedingperspectiveofcottonseedtraitsbygenomewideassociationstudy
AT xuhaiming dissectionofcomplicategeneticarchitectureandbreedingperspectiveofcottonseedtraitsbygenomewideassociationstudy